Aldolases are seen as an attractive route to the production of biologically important compounds due to their ability to form carbon–carbon bonds. However, for many industrial reactions there are no naturally occurring enzymes, and so many different engineering approaches have been used to address this problem. Engineering methods have been used to alter the stability, substrate specificity and stereospecificity of aldolases to produce excellent enzymes for biocatalytic processes. Recently greater understanding of the aldolase mechanism has allowed many successes with both rational engineering approaches and computational design of aldolases. Rational engineering approaches have produced desired enzymes quickly and efficiently while combinat...
International audienceAldolases are key biocatalysts for stereoselective C–C bond formation allowing...
The widespread adoption of biocatalysis by industry to perform highly selective chemical syntheses h...
International audienceAldolases are key biocatalysts for stereoselective C–C bond formation allowing...
Aldolases are seen as an attractive route to the production of biologically important compounds due ...
This review focuses on the directed evolution of aldolases with synthetically useful properties. Dir...
This review focuses on the directed evolution of aldolases with synthetically useful properties. Dir...
AbstractIn this mini-review we describe the different strategies for rational protein engineering an...
In this mini-review we describe the different strategies for rational protein engineering and summar...
In this mini-review we describe the different strategies for rational protein engineering and summar...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
Aldolases are powerful C-C bond-forming enzymes in biocatalysis because of their unparalleled stereo...
The research summarized in this thesis focuses on directed evolution and enzyme mechanism studies of...
Application of aldolases for the asymmetric synthesis of multifunctional chiral products is hampered...
International audienceAldolases are key biocatalysts for stereoselective C–C bond formation allowing...
The widespread adoption of biocatalysis by industry to perform highly selective chemical syntheses h...
International audienceAldolases are key biocatalysts for stereoselective C–C bond formation allowing...
Aldolases are seen as an attractive route to the production of biologically important compounds due ...
This review focuses on the directed evolution of aldolases with synthetically useful properties. Dir...
This review focuses on the directed evolution of aldolases with synthetically useful properties. Dir...
AbstractIn this mini-review we describe the different strategies for rational protein engineering an...
In this mini-review we describe the different strategies for rational protein engineering and summar...
In this mini-review we describe the different strategies for rational protein engineering and summar...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
Aldolases are powerful C-C bond-forming enzymes in biocatalysis because of their unparalleled stereo...
The research summarized in this thesis focuses on directed evolution and enzyme mechanism studies of...
Application of aldolases for the asymmetric synthesis of multifunctional chiral products is hampered...
International audienceAldolases are key biocatalysts for stereoselective C–C bond formation allowing...
The widespread adoption of biocatalysis by industry to perform highly selective chemical syntheses h...
International audienceAldolases are key biocatalysts for stereoselective C–C bond formation allowing...